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A Mechanistic Study of Halogen Addition and Photoelimination from π-Conjugated Tellurophenes

机译:π共轭碲醚的卤素加成和光消除的机理研究

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摘要

The ability to drive reactivity using visible light is of importance for many disciplines of chemistry and has significant implications for sustainable chemistry. Identifying photochemically active compounds and understanding photochemical mechanisms is important for the development of useful materials for synthesis and catalysis. Here we report a series of photoactive diphenyltellurophene compounds bearing electron-withdrawing and electron-donating substituents synthesized by alkyne coupling/ring closing or palladium-catalyzed ipso-arylation chemistry. The redox chemistry of these compounds was studied with respect to oxidative addition and photoelimination of bromine, which is of importance for energy storage reactions involving X_2. The oxidative addition reaction mechanism was studied using density functional theory, the results of which support a three-step mechanism involving the formation of an initial η~1 association complex, a monobrominated intermediate, and finally the dibrominated product. All of the tellurophene derivatives undergo photoreduction using 430, 447, or 617 nm light depending on the absorption properties of the compound. Compounds bearing electron-withdrawing substituents have the highest photochemical quantum efficiencies in the presence of an alkene trap, with efficiencies of up to 42.4% for a pentafluorophenyl-functionalized tellurophene. The photoelimination reaction was studied in detail through bromine trapping experiments and laser flash photolysis, and a mechanism is proposed. The photoreaction, which occurs by release of bromine radicals, is competitive with intersystem crossing to the triplet state of the brominated species, as evidenced by the formation of singlet oxygen. These findings should be useful for the design of new photochemically active compounds supported by main-group elements.
机译:使用可见光驱动反应的能力对许多化学学科都很重要,并且对可持续化学具有重要意义。鉴定光化学活性化合物并了解光化学机理对于开发用于合成和催化的有用材料很重要。在这里,我们报告了一系列具有光吸收性的二苯基二茂铁化合物,这些化合物带有通过炔烃偶联/闭环或钯催化的ipso-芳基化化学反应合成的吸电子和供电子取代基。针对溴的氧化加成和光消除,研究了这些化合物的氧化还原化学,这对于涉及X_2的储能反应至关重要。使用密度泛函理论研究了氧化加成反应机理,其结果支持了三步机理,涉及形成初始η〜1缔合物,单溴化中间体以及最终形成二溴化产物。根据化合物的吸收性质,所有碲脲衍生物都使用430、447或617 nm光进行光还原。带有吸电子取代基的化合物在存在烯烃陷阱的情况下具有最高的光化学量子效率,对五氟苯基官能化的碲二苯醚的效率高达42.4%。通过溴捕获实验和激光闪光光解研究了光消除反应,并提出了机理。通过释放溴自由基而发生的光反应与系统间的交叉竞争进入溴化物种的三重态,这是由单重态氧的形成所证明的。这些发现对于设计由主族元素支持的新型光化学活性化合物应该是有用的。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2016年第8期|2678-2689|共12页
  • 作者单位

    Department of Chemistry, University of Toronto, 80 St. George Street, Toronto, Ontario M5S 3H6, Canada;

    Department of Chemistry and Centre for Catalysis Research and Innovation, University of Ottawa, 10 Marie Curie, Ottawa, Ontario K1N 6N5, Canada;

    Department of Chemistry, University of Toronto, 80 St. George Street, Toronto, Ontario M5S 3H6, Canada;

    Department of Chemistry and Centre for Catalysis Research and Innovation, University of Ottawa, 10 Marie Curie, Ottawa, Ontario K1N 6N5, Canada;

    Department of Chemistry, University of Toronto, 80 St. George Street, Toronto, Ontario M5S 3H6, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:08:43

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